0011201252 Allicdata Electronics
Allicdata Part #:

0011201252-ND

Manufacturer Part#:

0011201252

Price: $ 25.64
Product Category:

Tools

Manufacturer: Molex, LLC
Short Description: TOOL PRESS PNEUM 24-26AWG
More Detail: Bench Press, Pneumatic Tool Rectangular IDC Connec...
DataSheet: 0011201252 datasheet0011201252 Datasheet/PDF
Quantity: 1000
1 +: $ 23.31000
Stock 1000Can Ship Immediately
$ 25.64
Specifications
Series: Hawk™, SPOX™
Part Status: Active
Tool Type: Bench Press, Pneumatic
For Use With/Related Products: Rectangular IDC Connectors, 24-26 AWG
Features: --
Description

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Crimpers, Applicators & Presses

0011201252 Application Field and Working Principle

Crimp applicators and presses are widely used in various industries across the world, with a range of applications from the automotive field to the aerospace industry. The technology is often used for constructing electrical cables, creating wire harnesses, and even for repairing components. Crimp applicators and presses work by using a die set, or a combined die set and anvil set, to apply pressure onto a component. This results in a secure attachment of two components, usually two wires, that are held together through a crimped joint.

The die set works by compressing a connector such as a wire lug onto a wire, forming a secure connection. This type of connector is traditionally used in power grids and on aircrafts, as it provides an efficient and secure connection without any additional tools. Additionally, the connector is able to maintain its integrity in extreme temperatures and can be used in a multitude of electrical and docking applications.

Crimp Machines

Crimping machines are the backbone of crimp applicator and press technology. They use a die set to apply mechanical pressure onto the connectors, with the force being controlled by an electromagnetically operated control mechanism. The die set is usually composed of two parts: an anvil and a die. The anvil is the stationary portion of the die set and is responsible for providing a permanent connection when force is applied. The die is the mobile part of the die set and is responsible for providing a specific shape to the joint by exerting a series of compressive forces.

Crimp machines can be operated either manually, using hand tools, or mechanically using various types of mechanical or hydraulic mechanisms. When operated manually, the die set is held in a fixed position and manual force is then used to compress the connector onto the wires, forming a secure joint. When operated mechanically, a motorized mechanism is usually employed to exert the pressure and achieve the desired shape. Additionally, there are many types of machines available on the market that vary in size and are specialized for specific application purposes.

Benefits and Limitations of Crimp Requirements

Crimping provides a secure and consistent connection between two components and can be used in a wide range of electrical, power cable, and docking applications. It is also a relatively quick and straightforward process that requires minimal effort. However, the process is limited by the tensile strength of the material used and the quality of the connection made. Additionally, a properly made crimp is usually difficult to inspect and therefore requires that all of the components be tested and checked for any imperfections.

Crimp applicators and presses are essential components in many applications throughout the automotive and aerospace industries as they provide a reliable and secure connection between two components. They work by using a variety of die sets, or a combination of an anvil and die set which apply pressure onto a component. Additionally, the technology is also regularly used for constructing electrical cables and for repairing components. Although the process can be limited by the tensile strength of the material used and the quality of the connection made, the technology still offers a reliable and efficient solution for many applications.

The specific data is subject to PDF, and the above content is for reference

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